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Surface plasmon resonance based sensing of different chemical and biological samples using admittance loci method

机译:基于导纳位点法的基于表面等离子体共振的不同化学和生物样品感测

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The admittance loci method plays an important role in the design of multilayer thin film structures. In this paper, admittance loci method has been explored theoretically for sensing of various chemical and biological samples based on surface plasmon resonance (SPR) phenomenon. A dielectric multilayer structure consisting of a Boro silicate glass (BSG) substrate, calcium fluoride (CaF2) and zirconium dioxide (ZrO2) along with different dielectric layers has been investigated. Moreover, admittance loci as well as SPR curves of metal-dielectric multilayer structure consisting of the BSG substrate, gold metal film and various dielectric samples has been simulated in MATLAB environment. To validate the proposed simulation results, calibration curves have also been provided.
机译:导纳位点法在多层薄膜结构的设计中起着重要作用。本文从理论上探讨了基于表面等离振子共振(SPR)现象的各种化学和生物样品的导纳位点法。已经研究了由硼硅酸盐玻璃(BSG)基板,氟化钙(CaF2)和二氧化锆(ZrO2)以及不同的介电层组成的介电多层结构。此外,在MATLAB环境下模拟了由BSG衬底,金金属膜和各种介电样品组成的金属介电多层结构的导纳位点以及SPR曲线。为了验证所提出的仿真结果,还提供了校准曲线。

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